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The α-Crystallin Domain Containing Genes: Identification Phylogeny and Expression Profiling in Abiotic Stress Phytohormone Response and Development in Tomato (Solanum lycopersicum)

机译:含α-结晶蛋白结构域的基因:非生物胁迫番茄激素反应和发育中的鉴定系统发育和表达谱

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摘要

The α-crystallin domain (ACD) is an ancient domain conserved among all kingdoms. Plant ACD proteins have roles in abiotic stresses, transcriptional regulation, inhibiting virus movement, and DNA demethylation. An exhaustive in-silico analysis using Hidden Markov Model-based conserved motif search of the tomato proteome yielded a total of 50 ACD proteins that belonged to four groups, sub-divided further into 18 classes. One of these groups belongs to the small heat shock protein (sHSP) class of proteins, molecular chaperones implicated in heat tolerance. Both tandem and segmental duplication events appear to have shaped the expansion of this gene family with purifying selection being the primary driving force for evolution. The expression profiling of the Acd genes in two different heat stress regimes suggested that their transcripts are differentially regulated with roles in acclimation and adaptive response during recovery. The co-expression of various genes in response to different abiotic stresses (heat, low temperature, dehydration, salinity, and oxidative stress) and phytohormones (abscisic acid and salicylic acid) suggested possible cross-talk between various members to combat a myriad of stresses. Further, several genes were highly expressed in fruit, root, and flower tissues as compared to leaf signifying their importance in plant development too. Evaluation of the expression of this gene family in field grown tissues highlighted the prominent role they have in providing thermo-tolerance during daily temperature variations. The function of three putative sHSPs was established as holdase chaperones as evidenced by protection to malate-dehydrogenase against heat induced protein-aggregation. This study provides insights into the characterization of the Acd genes in tomato and forms the basis for further functional validation in-planta.
机译:α-晶状体蛋白结构域(ACD)是所有王国之间保守的古老结构域。植物ACD蛋白在非生物胁迫,转录调控,抑制病毒运动和DNA脱甲基化中起作用。使用基于隐马尔可夫模型的番茄蛋白质组保守基序搜索进行的详尽的计算机模拟分析得出了总共50种ACD蛋白,该蛋白属于四类,进一步细分为18类。这些组之一属于小热激蛋白(sHSP)类蛋白,与耐热性有关。串联和节段重复事​​件似乎都影响了该基因家族的扩展,纯化选择是进化的主要动力。 Acd基因在两种不同的热应激条件下的表达谱表明,它们的转录本受恢复过程中的驯化和适应性反应的差异调节。各种基因对不同的非生物胁迫(热,低温,脱水,盐度和氧化胁迫)和植物激素(脱落酸和水杨酸)的共表达表明,各种成员之间可能存在相互干扰以应对无数种胁迫。 。此外,与叶片相比,几种基因在果实,根和花组织中高表达,也表明它们在植物发育中的重要性。在田间生长的组织中对该基因家族的表达进行评估,突显了它们在每日温度变化过程中提供耐热性方面的重要作用。通过保护苹果酸脱氢酶免受热诱导的蛋白质聚集,证明了三种推定的sHSPs的功能为holdase伴侣。这项研究提供了对番茄中Acd基因表征的见解,并为进一步验证植物体内功能奠定了基础。

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